论文标题

缺陷对单层MOS $ _ {2} $化学蒸气沉积生长的单层MOS的山谷极化特性的影响

Influence of Defects on the Valley Polarization Properties of Monolayer MoS$_{2}$ Grown by Chemical Vapor Deposition

论文作者

Mujeeb, Faiha, Chakrabarti, Poulab, Mahamiya, Vikram, Shukla, Alok, Dhar, Subhabrata

论文摘要

在这里,在沉积1L-MOS $ _ {2} $的化学蒸气中研究了山谷去极化背后的基本机制。在生长,转移和封顶的样品上进行了依赖温度的极化分辨光谱光谱。已经发现,由于与空气分子缺陷相连的硫胶导致激动子的动量散射对山谷去极化过程的影响很大。我们的研究表明,在这种缺陷和温度的足够低的密度下,由于通过Maialle-Silva-SHAM(MSS)机理的动量散射引起的远程电子交换介导的间隔转移确实是T. Yu等人所暗示的最主要的旋转FLIP过程。由于这些缺陷引起的激动子的动量散射速率与缺陷密度的立方​​根成正比。涉及$γ$ -VALLEY的激子的Intervalley转移过程在山谷的去极化过程中也具有重要意义,因为这些扰动将$ K $降低至$γ$ Emangy-Emergy分离,因此该层具有拉伸应变或$ V_S $缺陷的高密度。在密度功能理论框架内进行的带结构计算验证了这一发现。实验结果进一步表明,交换与物理型空气分子的交换相互作用也可以导致激子的间隔自旋叉散射,并且此过程为山谷去极化做出了重要的贡献,特别是在强散射状态下。

Here, the underlying mechanisms behind valley de-polarization is investigated in chemical vapor deposited 1L-MoS$_{2}$. Temperature dependent polarization resolved photoluminescence spectroscopy was carried out on as-grown, transferred and capped samples. It has been found that the momentum scattering of the excitons due to the sulfur-vacancies attached with air-molecule defects has a strong influence on the valley de-polarization process. Our study reveals that at sufficiently low densities of such defects and temperatures, long range electron-hole exchange mediated intervalley transfer due to momentum scattering via Maialle-Silva-Sham (MSS) mechanism of excitons is indeed the most dominant spin-flip process as suggested by T. Yu et al. The rate of momentum scattering of the excitons due to these defects is found to be proportional to the cube root of the density of the defects. Intervalley transfer process of excitons involving $Γ$-valley also has significance in the valley de-polarization process specially when the layer has tensile strain or high density of $V_S$ defects as these perturbations reduce $K$ to $Γ$-energy separation. Band-structural calculations carried out within the density functional theory framework validate this finding. Experimental results further suggest that exchange interactions with the physisorbed air molecules can also result in the intervalley spin-flip scattering of the excitons, and this process gives an important contribution to valley depolarization, specially at the strong scattering regime.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源